Discrimination of Stereoisomers by Their Enantioselective Interactions with Chiral Cholesterol-Containing Membranes

Discrimination between enantiomers is an important subject in medicinal and biological chemistry because they exhibit markedly different bioactivity and toxicity. Although stereoisomers should vary in the mechanistic interactions with chiral targets, their discrimination associated with the mode of...

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Main Authors: Hironori Tsuchiya, Maki Mizogami
Format: Article
Language:English
Published: MDPI AG 2017-12-01
Series:Molecules
Subjects:
Online Access:https://www.mdpi.com/1420-3049/23/1/49
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spelling doaj-aede681fdfc04d77ae9212f138e3d6422020-11-25T00:17:03ZengMDPI AGMolecules1420-30492017-12-012314910.3390/molecules23010049molecules23010049Discrimination of Stereoisomers by Their Enantioselective Interactions with Chiral Cholesterol-Containing MembranesHironori Tsuchiya0Maki Mizogami1Department of Dental Basic Education, Asahi University School of Dentistry, Mizuho, Gifu 501-0296, JapanDepartment of Anesthesiology and Reanimatology, University of Fukui Faculty of Medical Sciences, Eiheiji-cho, Fukui 910-1193, JapanDiscrimination between enantiomers is an important subject in medicinal and biological chemistry because they exhibit markedly different bioactivity and toxicity. Although stereoisomers should vary in the mechanistic interactions with chiral targets, their discrimination associated with the mode of action on membrane lipids is scarce. The aim of this study is to reveal whether enantiomers selectively act on chiral lipid membranes. Different classes of stereoisomers were subjected at 5–200 μM to reactions with biomimetic phospholipid membranes containing ~40 mol % cholesterol to endow the lipid bilayers with chirality and their membrane interactions were comparatively evaluated by measuring fluorescence polarization. All of the tested compounds interacted with cholesterol-containing membranes to modify their physicochemical property with different potencies between enantiomers, correlating to those of their experimental and clinical effects. The rank order of membrane interactivity was reversed by changing cholesterol to C3-epimeric α-cholesterol. The same selectivity was also obtained from membranes prepared with 5α-cholestan-3β-ol and 5β-cholestan-3α-ol diastereomers. The opposite configuration allows molecules to interact with chiral sterol-containing membranes enantioselectively, and the specific β configuration of cholesterol’s 3-hydroxyl group is responsible for such selectivity. The enantioselective membrane interaction has medicinal implications for the characterization of the stereostructures with higher bioactivity and lower toxicity.https://www.mdpi.com/1420-3049/23/1/49stereoisomerdiscriminationenantioselective membrane interactionchiral membranecholesterol
collection DOAJ
language English
format Article
sources DOAJ
author Hironori Tsuchiya
Maki Mizogami
spellingShingle Hironori Tsuchiya
Maki Mizogami
Discrimination of Stereoisomers by Their Enantioselective Interactions with Chiral Cholesterol-Containing Membranes
Molecules
stereoisomer
discrimination
enantioselective membrane interaction
chiral membrane
cholesterol
author_facet Hironori Tsuchiya
Maki Mizogami
author_sort Hironori Tsuchiya
title Discrimination of Stereoisomers by Their Enantioselective Interactions with Chiral Cholesterol-Containing Membranes
title_short Discrimination of Stereoisomers by Their Enantioselective Interactions with Chiral Cholesterol-Containing Membranes
title_full Discrimination of Stereoisomers by Their Enantioselective Interactions with Chiral Cholesterol-Containing Membranes
title_fullStr Discrimination of Stereoisomers by Their Enantioselective Interactions with Chiral Cholesterol-Containing Membranes
title_full_unstemmed Discrimination of Stereoisomers by Their Enantioselective Interactions with Chiral Cholesterol-Containing Membranes
title_sort discrimination of stereoisomers by their enantioselective interactions with chiral cholesterol-containing membranes
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2017-12-01
description Discrimination between enantiomers is an important subject in medicinal and biological chemistry because they exhibit markedly different bioactivity and toxicity. Although stereoisomers should vary in the mechanistic interactions with chiral targets, their discrimination associated with the mode of action on membrane lipids is scarce. The aim of this study is to reveal whether enantiomers selectively act on chiral lipid membranes. Different classes of stereoisomers were subjected at 5–200 μM to reactions with biomimetic phospholipid membranes containing ~40 mol % cholesterol to endow the lipid bilayers with chirality and their membrane interactions were comparatively evaluated by measuring fluorescence polarization. All of the tested compounds interacted with cholesterol-containing membranes to modify their physicochemical property with different potencies between enantiomers, correlating to those of their experimental and clinical effects. The rank order of membrane interactivity was reversed by changing cholesterol to C3-epimeric α-cholesterol. The same selectivity was also obtained from membranes prepared with 5α-cholestan-3β-ol and 5β-cholestan-3α-ol diastereomers. The opposite configuration allows molecules to interact with chiral sterol-containing membranes enantioselectively, and the specific β configuration of cholesterol’s 3-hydroxyl group is responsible for such selectivity. The enantioselective membrane interaction has medicinal implications for the characterization of the stereostructures with higher bioactivity and lower toxicity.
topic stereoisomer
discrimination
enantioselective membrane interaction
chiral membrane
cholesterol
url https://www.mdpi.com/1420-3049/23/1/49
work_keys_str_mv AT hironoritsuchiya discriminationofstereoisomersbytheirenantioselectiveinteractionswithchiralcholesterolcontainingmembranes
AT makimizogami discriminationofstereoisomersbytheirenantioselectiveinteractionswithchiralcholesterolcontainingmembranes
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